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Biogeological Raman spectroscopic studies of Antarctic lacustrine sediments. Spectrochimica Acta Part a-Molecular and Biomolecular Spectroscopy 61, (2005).
Biotic interactions are an unexpected yet critical control on the complexity of an abiotically driven polar ecosystem. Communications Biology 2, (2019).
Biotic interactions in Antarctic terrestrial ecosystems: Are they a factor?. Soil Biology and Biochemistry 38, 3035-3040 (2006).
Biotic interactions in experimental Antarctic soil microcosms vary with abiotic stress. Soil Systems 3, (2019).
BioTIME: A database of biodiversity time series for the Anthropocene. Global Ecology and Biogeography 27, 760-786 (2018).
Book Review: Physical and biogeochemical processes in Antarctic lakes. Limnology and Oceanography 39, 1499-1500 (1993).
Boron isotopic geochemistry of the McMurdo Dry Valley lakes, Antarctica. Chemical Geology 386, 152 - 164 (2014).
Ca isotopic geochemistry of an Antarctic aquatic system. Geophysical Research Letters 44, 882 - 891 (2017).
Can warming induce advances of polar glaciers, Taylor Valley, Antarctica. Journal of Glaciology 50, 556-564 (2004).
Canada Stream: a glacial meltwater stream in Taylor Valley, South Victoria Land, Antarctica. Journal of the North American Benthological Society 16, 14-17 (1997).
Carbon cycling in soils of the McMurdo Dry Valley region, Antarctica. Bulletin of the Ecological Society of America Supplement 78, 230 (1997).
The Carbon Isotopic Composition of Dissolved Inorganic Carbon in Perennially Ice-Covered Antarctica Lakes: Searching for a Biogenic Signature. Annals of Glaciology 39, (2004).
Carbon Sequestration and Release from Antarctic Lakes: Lake Vida and West Lake Bonney (McMurdo Dry Valleys). Aquatic Geochemistry 19, 135 - 145 (2013).
The carbon stable isotope biogeochemistry of streams, Taylor Valley, Antarctica. Applied Geochemistry 32, 26 - 36 (2013).
Catch and release: Hyporheic retention and mineralization of N-fixing Nostoc sustains downstream microbial mat biomass in two polar desert streams. Limnology and Oceanography Letters 3, 357 - 364 (2018).
Challenges to the Future Conservation of the Antarctic. Science 337, 158 - 159 (2012).
Changes in fulvic acid redox state through the oxycline of a permanently ice-covered Antarctic lake. Aquatic Sciences 66, 1-20 (2004).
Characterization of fulvic acid fractions of dissolved organic matter during ice-out in a hyper-eutrophic, coastal pond in Antarctica. Environmental Research Letters 8, 045015 (2013).
Characterization of Growing Bacterial Populations in McMurdo Dry Valley Soils through Stable Isotope Probing with 18O-water. FEMS Microbiology Ecology. 89, 415-425 (2014).
Characterization of IHSS Pony Lake fulvic acid dissolved organic matter by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry and fluorescence spectroscopy. Organic Geochemistry 65, 19 - 28 (2013).
Characterizing hyporheic exchange processes using high-frequency electrical conductivity-discharge relationships on subhourly to interannual timescales. Water Resources Research 53, 4124 - 4141 (2017).
Chemical analysis of ice vein microenvironments: II. Analysis of glacial samples from Greenland and Antarctica. Journal of Glaciology 58, 1109 - 1118 (2012).
The chemical composition of runoff from Canada Glacier, Antarctica: implications for glacier hydrology during a cool summer. Annals of Glaciology 40, 15-19 (2005).